- •Preface
- •MLCC General Information
- •Specification overview
- •Case dimensions
- •Ordering Information - Global part number
- •Ordering information for North America
- •Thickness classes and packing quantities for all series
- •MLCC Selection Charts
- •NP0, 16V, general purpose
- •NP0, 25V, general purpose
- •NP0, 16/25V, general purpose
- •NP0, 50V, general purpose
- •NP0, 100V, medium voltage
- •NP0, 200V, medium voltage
- •NP0, 250V, medium voltage
- •NP0, 500V, medium voltage
- •NP0, 630V, medium voltage
- •NP0, 1kV and 2kV, high voltage
- •NP0, 3kV and 4kV, high voltage
- •NP0, 50V, microwave
- •X7R, 10V and 16V, high capacitance and general purpose
- •X7R, 25V, high capacitance and general purpose
- •X7R, 50V, high capacitance and general purpose
- •X7R, 100V, medium voltage
- •X7R, 200V, medium voltage
- •X7R, 250V, medium voltage
- •X7R, 500V, medium voltage
- •X7R, 630V, medium voltage
- •X7R, 1kV to 3kV, high voltage
- •X7R, 10V to 50V, low inductance
- •X5R, 6.3V, high capacitance
- •X5R, 10V, high capacitance
- •X5R, 16V, high capacitance
- •X5R, 25V, high capacitance
- •Y5V, 6.3V, general purpose and high capacitance
- •Y5V, 10V, general purpose and high capacitance
- •Y5V, 16V, general purpose and high capacitance
- •Y5V, 25V, general purpose and high capacitance
- •Y5V, 50V, general purpose
- •Arrays
- •X7R, 16V, 2-C arrays
- •NP0, 50V, 4-C arrays
- •X7R, 16V to 50V, 4-C arrays
- •Y5V, 25V, 4-C arrays
- •X7R, Multi-value capacitor network
- •Ultra small MLCCs
- •NP0, 25V, ultra small MLCCs
- •NP0, 50V, ultra small MLCCs
- •X7R, 10V to 50V, ultra small MLCCs
- •X5R, 6.3V to 16V, 50, ultra small MLCCs
- •Y5V, 6.3V, ultra small MLCCs
- •MLCC Engineering Design Kits
- •Sample kits for 0201 and 0402
- •Sample kits for 0603 and 0805
- •Sample kits for 1206
- •Sample kits for high capacitance series
- •High voltage sample kits for PCs segment
- •High voltage sample kits for inverter segment
- •High voltage sample kits for general application
- •High voltage sample kits for safety certification MLCCs
- •Sample kits for all sizes, all types, E1 series only
- •Resistor Chip General Information
- •Specification overview
- •Ordering Information - Global part number
- •Ordering information for North America
- •IEC publication 63, SPQ, last digit of 12NC
- •Resistor Chip Selection Charts
- •Introduction
- •General purpose, 01005 to 0805
- •General purpose, 1206 to 2512
- •Introduction
- •High precision - high stability, 0402 to 0603
- •High precision - high stability, 0805 to 1210
- •High precision - high stability, 2010 to 2512
- •General Purpose, 0402 to 2512
- •Introduction
- •Arrays, convex and concave
- •Networks, T-type and L-type
- •Introduction
- •Introduction
- •Low ohmic, 0201 to 1206
- •Low ohmic, 1210 to 2512
- •Low ohmic, high power, 0805 and 1206
- •Introduction
- •Introduction
- •Ni/Au terminations, 0402 to 1206
- •Introduction
- •Surge, 0805 to 2512
- •Introduction
- •High voltage, 0805 to 2512
- •Introduction
- •Trimmable, 0402 to 1206
- •Introduction
- •Current sensors - Low TCR, standard & power enhancement series
- •Introduction
- •Attenuators, 0404
- •Resistor Chip Engineering Design Kits
- •Engineering design kits
- •HF Product Selection Charts
- •GPS patch antenna and active module
- •UHF, Dual-band and Triple-band antenna
- •Bluetooth antenna, 2012 to 5320
- •Bluetooth antenna, 7355 to 7836
- •Band pass filter
- •Low pass filter
- •Balun
- •Combo
- •Diplexer
- •X2Y® Product Selection Charts
- •Ordering code, thickness classes and packing quantities
- •MLV Product Selection Charts
- •General purpose, sizes 0402 and 0603
- •Case dimensions, thickness classes and packing quantities
Resistor Chip Selection Charts
Surge, 0805 to 2512
R-Chip Surge/FR series
Product |
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|
Surge Chip Resistors Series |
|
|
Size: inch (mm) |
|
0805 (2012) |
1206 (3216) |
1218 (3248) |
2512 (6432) |
Power P70 |
|
1/8W |
1/4W |
1W |
1W |
Tolerance |
|
±5% |
±5% |
±5% |
±5% |
Resistance Range |
E24 |
E24 |
E24 |
E24 |
|
1 |
Ω |
|
|
|
|
1.5 |
Ω |
|
|
|
|
2.2 |
Ω |
|
|
|
|
3.3 |
Ω |
|
|
|
|
4.7 |
Ω |
|
|
|
|
6.8 |
Ω |
|
|
|
|
10 |
Ω |
|
|
|
|
15 |
Ω |
|
|
|
|
22 |
Ω |
|
|
|
|
33 |
Ω |
|
|
|
|
47 |
Ω |
|
|
|
|
68 |
Ω |
|
|
|
|
100 |
Ω |
|
|
|
|
150 |
Ω |
|
|
|
|
220 |
Ω |
|
|
|
|
330 |
Ω |
|
|
|
|
470 |
Ω |
|
|
|
|
680 |
Ω |
|
|
|
|
1 kΩ |
|
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|
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1.5 kΩ |
|
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2.2 kΩ |
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3.3 kΩ |
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4.7 kΩ |
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6.8 kΩ |
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10 kΩ |
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15 kΩ |
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22 kΩ |
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33 kΩ |
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47 kΩ |
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68 kΩ |
|
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100 kΩ |
|
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Remark |
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|
Note: 1. Value in "Resistance" means the minimum one.
2.Products with lead free terminations meet RoHS requirements.(Non of the forbidden materials are used in products / production) The Pb-glass contained in electrodes , resistor element and glass is exempted by RoHS.
148

Revision 1 - PSG 2008
Resistor Chip Selection Charts
Surge, 0805 to 2512
Global part number - Preferred type
Ordering example: SR0805MR-07100K(L)
SR 0805 M R _ 07 100K (L)
Series name (code 1~2)
SR = Surge chip resistor
Size code (inch) (code 3~6) 0805 1206 1218 2512
Tolerance (code 7)
J= ±5%
K= ±10% M= ±20%
Optional code* (code 17)
Resistance (code 12~16) 100K = 100KΩ
1R = 10Ω
Tape reel (code 10~11) 07 = 7 inch reel
T.C.R. (code 9)
" " = Based on spec.
Packing style (code 8)
R = Paper
K = Embossed
*Note: 1. All our RSMD products meet RoHS compliant. "LFP" of the internal 2D reel label mentions "Lead Free Process"
2. On customized label, "LFP" or specific symbol printed and the optional "L" at the end of CTC / 12NC can be added (both are on customer request)
Ordering information - Phycomp world wide - Traditional type
Surge resistor chips
Size: inch (mm) |
0805 (2012) |
1206 (3216) |
1218 (3248) |
|
2512 (6432) |
|
|
Power |
|
1/8W |
1/4W |
1W |
|
1W |
|
Tolerance |
+10% |
+5% |
+10% |
+5% |
+10% |
+20% |
|
Resistance |
E24 |
E24 |
E24 |
E24 |
E24 |
E24 |
|
Packing |
|
paper tape |
paper tape |
paper tape |
paper tape |
paper tape |
paper tape |
Quantity 4 |
000 |
--- |
--- |
2350 557 10...L |
2350 556 11...L |
2350 556 10...L |
2350 556 13...L |
5 |
000 |
2350 554 12...L |
2350 550 10...L |
--- |
--- |
--- |
--- |
For ordering rules: See page 107 for E24/E96 values and the last 4 or 3 digits of the 12NC catalogue number.
Ordering information - Phycomp North America - Traditional type
Refer to page 106.
149
Resistor Chip Selection Charts
Introduction
FEATURES
•Higher maximum working voltage to RC series
•Extremely thin and light
•Reliable electrode construction
•Compatible with lead containing and lead free soldering processes
•Highly stable in auto-placement surface mounting
Derating curve |
Construction |
Maximum dissipation (P) in percentage of |
Resistor (RuO2) |
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Overcoat |
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rated power as a function of the operating |
(Jumper chip is a conductor) |
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(Epoxy) |
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Primary glass layer |
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ambient temperature (Tamb) |
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100 |
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70 |
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(%) |
80 |
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Power |
60 |
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Rated |
40 |
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20 |
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Alumina Substrate |
External electrode |
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(matte Tin) |
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155 |
|
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-55 |
-40 |
-20 |
0 |
20 |
40 |
60 |
80 |
100 |
120 |
140 |
160 |
Internal Electrode (Ag-Pd) |
Secondary Electrode |
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Ambient Temperature (°C) |
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(Nickel plated) |
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Dimensions |
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I1 |
|
I1 |
|
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TYPE |
L |
W |
H |
I1 |
I2 |
H |
|
RV0805 |
2.00 ±0.10 |
1.25 ±0.10 |
0.50 ±0.10 |
0.35 ±0.20 |
0.35 ±0.20 |
|
RV1206 |
3.10 ±0.10 |
1.60 ±0.10 |
0.55 ±0.10 |
0.45 ±0.20 |
0.40 ±0.20 |
|
|
|
||||||
I2 |
I2 |
RV2512 |
6.35 ±0.10 |
3.10 ±0.15 |
0.55 ±0.10 |
0.60 ±0.20 |
0.50 ±0.20 |
W |
|
|
|
|
|
||
L |
|
|
|
|
|
|
|
|
unit: mm |
|
|
|
|
|
|
150

Revision 1 - PSG 2008
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Resistor Chip Selection Charts |
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Introduction |
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Electrical characteristics |
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Style |
Power |
|
Operating Temp. |
MWV |
RCOV |
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DWV |
Resistance range & tolerance |
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TCR |
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P70 |
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range |
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(ppm/°C) |
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RV0805 |
1/8W |
|
-55°C ~ +155°C |
400V |
800V |
|
800V |
E24 ±5% |
100KW ~ 10MW |
±200 |
100KW £ R £ 10MW |
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E24/E96 ±1% |
100KW ~ 10MW |
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RV1206 |
1/4W |
|
-55°C ~ +155°C |
500V |
1000V |
|
1000V |
E24 ±5% |
100KW ~ 27MW |
±200 |
100KW £ R £ 27MW |
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E24/E96 ±1% |
100KW ~ 10MW |
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RV2512 |
1W |
|
-55°C ~ +155°C |
500V |
1000V |
|
1000V |
E24 ±5% |
4.7MW ~ 16MW |
±200 |
4.7MW £ R £ 16MW |
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Environmental characteristics |
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Performance test |
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Test method |
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Procedure |
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Requirements |
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Life |
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MIL-STD-202G-method |
|
1,000 hours at 70±5°C applied RCWV |
±(2%+ 0.05W) |
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108A |
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1.5 hours on, 0.5 hours off, still air required |
<100MW for jumper |
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High temperature |
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MIL-STD-202G-method |
|
1,000 hours at maximum operating temperature |
±(1%+ 0.05W) |
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exposure |
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108A |
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depending on specification, unpowered |
<50MW for jumper |
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MIL-STD-202G-method |
|
Each temp. / humidity cycle is defined at 8 hours |
±(2%+ 0.05W) |
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Moisture resistance |
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(method 106F), 3 cycles / 24 hours for 10d |
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106F |
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<100MW for jumper |
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with 25°C / 65°C 95% R.H |
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Thermal shock |
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MIL-STD-202G-method |
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LCT / UCT Number of cycles required is 300. |
±(0.5%+ 0.05W) for 10K to 10M |
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107G |
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Maximum transfer time is 20 seconds. |
±(1%+ 0.05W) for others |
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IPC/JEDECJ-STD-002B |
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Electrical test not required. magnification 50X. |
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Wetting |
|
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Leadfree solder bath at 245±3°C, |
Well tinned (³95% covered) |
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testB |
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Solderability |
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Dipping time: 3±0.5 seconds |
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Resistance to |
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MIL-STD-202G-method |
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Leadfree solder, 270°C, |
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±(1%+ 0.05W) |
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soldering heat |
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210F |
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10 seconds immersion time |
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<50MW for jumper |
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Short time overload |
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MIL-R-55342D-para |
|
2.5 times RCWV or maximum overload voltage |
±(2%+ 0.05W) |
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4.7.5 |
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whichever is less for 5 seconds at room temp. |
<50MW for jumper |
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151
